Major Mergers Going Notts: Challenges for Modern Halo Finders
Abstract
Merging haloes with similar masses (i.e., major mergers) pose significant challenges for halo finders. We compare five halo finding algorithms' (AHF, HBT, Rockstar, SubFind, and VELOCIraptor) recovery of halo properties for both isolated and cosmological major mergers. We find that halo positions and velocities are often robust, but mass biases exist for every technique. The algorithms also show strong disagreement in the prevalence and duration of major mergers, especially at high redshifts (z>1). This raises significant uncertainties for theoretical models that require major mergers for, e.g., galaxy morphology changes, size changes, or black hole growth, as well as for finding Bullet Cluster analogues. All finders not using temporal information also show host halo and subhalo relationship swaps over successive timesteps, requiring careful merger tree construction to avoid problematic mass accretion histories. We suggest that future algorithms should combine phase-space and temporal information to avoid the issues presented.
Keywords
Cite
@article{arxiv.1506.01405,
title = {Major Mergers Going Notts: Challenges for Modern Halo Finders},
author = {Peter Behroozi and Alexander Knebe and Frazer R. Pearce and Pascal Elahi and Jiaxin Han and Hanni Lux and Yao-Yuan Mao and Stuart I. Muldrew and Doug Potter and Chaichalit Srisawat},
journal= {arXiv preprint arXiv:1506.01405},
year = {2015}
}
Comments
Figs. 2, 4, and 7 show the main issues. This project was initiated at the Subhaloes Going Notts conference (http://popia.ft.uam.es/SubhaloesGoingNotts/Home.html). MNRAS submitted